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A new architecture for online error detection and isolation in network on chip

机译:芯片网络在线错误检测和隔离的新架构

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The Network-on-Chip (NoC) has become a promising communication infrastructure for Multiprocessors-System-on-Chip (MPSoC). Reliability is a main concern in NoC and performance is degraded when NoC is susceptible to faults. A fault can be determined as a cause of deviation from the desired operation of the system (error). To deal with these reliability challenges, this work propose OFDIM (Online Fault Detection and Isolation Mechanism),a novel combined methodology to tolerate multiple permanent and transient faults. The new router architecture uses two modules to assure highly reliable and low-cost fault-tolerant strategy. In contrast to existing works, our architecture presents less area, more fault tolerance, and high reliability. The reliability comparison using Silicon Protection Factor (SPF), shows 22-time improvement and that additional circuitry incurs an area overhead of 27%, which is better than state-of-the-art reliable router architectures. Also, the results show that the throughput decreases only by 5.19% and minor increase in average latency 2.40% while providing high reliability.
机译:片上网(NOC)已成为芯片系统(MPSOC)的多处理器通信基础设施。可靠性是NOC中的主要问题,并且当NOC易受故障的影响时,性能降低。可以确定故障作为与系统的所需操作(错误)的偏差的原因。为了处理这些可靠性挑战,这项工作提出了欧姆(在线故障检测和隔离机制),一种新的组合方法,可以容忍多个永久性和瞬态断层。新的路由器架构使用两个模块来确保高度可靠和低成本的容错策略。与现有的作品相比,我们的架构具有更少的面积,更容易容忍和高可靠性。使用硅保护因子(SPF)的可靠性比较显示22次改进,附加电路会引起27%的区域,这比最先进的可靠路由器架构更好。此外,结果表明,吞吐量仅降低了5.19%,平均延迟的小幅增加2.40%,同时提供高可靠性。

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